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110 lines
3.7 KiB
C
110 lines
3.7 KiB
C
/* Double-precision vector (AdvSIMD) exp2 function
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Copyright (C) 2023-2024 Free Software Foundation, Inc.
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This file is part of the GNU C Library.
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The GNU C Library is free software; you can redistribute it and/or
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modify it under the terms of the GNU Lesser General Public
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License as published by the Free Software Foundation; either
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version 2.1 of the License, or (at your option) any later version.
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The GNU C Library is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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Lesser General Public License for more details.
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You should have received a copy of the GNU Lesser General Public
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License along with the GNU C Library; if not, see
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<https://www.gnu.org/licenses/>. */
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#include "v_math.h"
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#include "poly_advsimd_f64.h"
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#define N (1 << V_LOG2_TABLE_BITS)
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static const struct data
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{
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uint64x2_t min_norm;
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uint32x4_t special_bound;
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float64x2_t poly[5];
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float64x2_t invln2;
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uint64x2_t sign_exp_mask;
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} data = {
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/* Each coefficient was generated to approximate log(r) for |r| < 0x1.fp-9
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and N = 128, then scaled by log2(e) in extended precision and rounded back
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to double precision. */
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.poly = { V2 (-0x1.71547652b83p-1), V2 (0x1.ec709dc340953p-2),
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V2 (-0x1.71547651c8f35p-2), V2 (0x1.2777ebe12dda5p-2),
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V2 (-0x1.ec738d616fe26p-3) },
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.invln2 = V2 (0x1.71547652b82fep0),
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.min_norm = V2 (0x0010000000000000), /* asuint64(0x1p-1022). */
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.special_bound = V4 (0x7fe00000), /* asuint64(inf) - min_norm. */
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.sign_exp_mask = V2 (0xfff0000000000000),
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};
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#define Off v_u64 (0x3fe6900900000000)
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#define IndexMask (N - 1)
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struct entry
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{
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float64x2_t invc;
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float64x2_t log2c;
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};
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static inline struct entry
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lookup (uint64x2_t i)
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{
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struct entry e;
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uint64_t i0 = (i[0] >> (52 - V_LOG2_TABLE_BITS)) & IndexMask;
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uint64_t i1 = (i[1] >> (52 - V_LOG2_TABLE_BITS)) & IndexMask;
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float64x2_t e0 = vld1q_f64 (&__v_log2_data.table[i0].invc);
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float64x2_t e1 = vld1q_f64 (&__v_log2_data.table[i1].invc);
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e.invc = vuzp1q_f64 (e0, e1);
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e.log2c = vuzp2q_f64 (e0, e1);
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return e;
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}
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static float64x2_t VPCS_ATTR NOINLINE
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special_case (float64x2_t x, float64x2_t y, float64x2_t w, float64x2_t r2,
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uint32x2_t special)
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{
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return v_call_f64 (log2, x, vfmaq_f64 (w, r2, y), vmovl_u32 (special));
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}
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/* Double-precision vector log2 routine. Implements the same algorithm as
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vector log10, with coefficients and table entries scaled in extended
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precision. The maximum observed error is 2.58 ULP:
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_ZGVnN2v_log2(0x1.0b556b093869bp+0) got 0x1.fffb34198d9dap-5
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want 0x1.fffb34198d9ddp-5. */
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float64x2_t VPCS_ATTR V_NAME_D1 (log2) (float64x2_t x)
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{
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const struct data *d = ptr_barrier (&data);
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uint64x2_t ix = vreinterpretq_u64_f64 (x);
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uint32x2_t special = vcge_u32 (vsubhn_u64 (ix, d->min_norm),
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vget_low_u32 (d->special_bound));
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/* x = 2^k z; where z is in range [Off,2*Off) and exact.
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The range is split into N subintervals.
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The ith subinterval contains z and c is near its center. */
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uint64x2_t tmp = vsubq_u64 (ix, Off);
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int64x2_t k = vshrq_n_s64 (vreinterpretq_s64_u64 (tmp), 52);
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uint64x2_t iz = vsubq_u64 (ix, vandq_u64 (tmp, d->sign_exp_mask));
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float64x2_t z = vreinterpretq_f64_u64 (iz);
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struct entry e = lookup (tmp);
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/* log2(x) = log1p(z/c-1)/log(2) + log2(c) + k. */
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float64x2_t r = vfmaq_f64 (v_f64 (-1.0), z, e.invc);
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float64x2_t kd = vcvtq_f64_s64 (k);
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float64x2_t w = vfmaq_f64 (e.log2c, r, d->invln2);
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float64x2_t r2 = vmulq_f64 (r, r);
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float64x2_t y = v_pw_horner_4_f64 (r, r2, d->poly);
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w = vaddq_f64 (kd, w);
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if (__glibc_unlikely (v_any_u32h (special)))
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return special_case (x, y, w, r2, special);
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return vfmaq_f64 (w, r2, y);
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}
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